944 resultados para Vaccine candidate


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La Enfermedad de Chagas es una de las principales endemias de América Latina donde existen cerca de 18 millones de infectados y 90 millones en riesgo. Entre el 25 y el 30 por ciento desarrolla patología cardíaca o digestiva en el período crónico. Se ha postulado que mecanismos autoinmunes, sumados a la acción directa del parásito, podrían estar involucrados en la patogenia de la enfermedad. El desarrollo de vacunas tradicionales en Enfermedad de Chagas es una meta difícil de alcanzar, por lo cual parece más factible abordar estrategias basadas en la inmunomodulación, para disminuir la carga parasitaria, minimizar las acciones deletéreas en el periodo agudo y prevenir el desarrollo de patología en la etapa crónica. Para ello es necesario avanzar en el conocimiento de los mecanismos involucrados en la protección y en la patogenia. Si se acepta la hipótesis autoinmune, una estrategia de vacunación con un tripanosoma antigénicamente similar al T. cruzi pero no patógeno podría evitar posibles mecanismos autoagresivos. En nuestro Laboratorio se ha empleado un modelo de vacunación en ratones utilizando como inmunógeno el Trypanosoma rangeli, no patógeno en humanos. Los ratones vacunados, infectados con T. cruzi, mostraron buena respuesta inmune celular y humoral, bajas parasitemias, ausencia de lesiones histológicas, y sobrevida cercana al 100 por ciento. Los controles no vacunados tuvieron una elevada mortalidad. Debido al ciclo biológico del parásito, la defensa efectiva contra el T. cruzi requiere una potente respuesta de anticuerpos contra las formas extracelulares y una eficaz respuesta celular contra los amastigotes intracelulares. En el modelo desarrollado en nuestro laboratorio la protección se asocia con un adecuado equilibrio entre respuesta TH1 y TH2, con leve predominio TH1, disminución de citoquinas (Ck) proinflamatorias e incremento de receptores solubles de Ck. El esquema de inmunización demostró asimismo su eficacia en cobayos y en perros mantenidos en el Laboratorio. Hipótesis de trabajo: - La vacunación con T. rangeli desencadena mecanismos inmunomodulatorios que protegen de la infección con T. cruzi, entre los cuales se encuentran eventos que actúan tempranamente en el sitio de inoculación y en los que están involucradas células y moléculas del sistema inmune innato. - La vacunación a perros constituye una nueva herramienta en la lucha contra la Enfermedad de Chagas. Objetivos: i) profundizar el estudio tendiente a dilucidar los mecanismos involucrados en la resistencia inducida por la inmunización con T. rangeli en ratones; ii) estudiar el efecto que tiene el estrés físico de los ratones sobre la eficacia de la vacunación y iii) analizar la inmunogenicidad de la vacuna en perros de zonas endémicas para Enfermedad de Chagas. Material y metodos: Los ratones y perros serán vacunados con tres dosis de epimastigotes de T. rangeli, fijados con glutaraldehido y los controles solo recibirán PBS. Los ratones seran desafiados con T. cruzi. Se estudiará en liquido peritoneal: a) poblaciones celulares por Citometria de flujo; b) cuantificación de los distintos tipos de inmunoglobulinas, de citoquinas y sus receptores solubles, por ELISA, c) ON y arginasa, por técnicas colorimetricas; d) est.udio de la interacción macrófago-parásito y de receptores celulares por Inmunofluorescencia. e) En perros, se realizarán estudios parasitológicos (xenodiagnostico) y serológicos en vacunados y controles, 12 y 24 meses post vacunación. Resultados esperados e importancia del proyecto: se espera conocer los principales eventos tempranos que participan en la eliminación de los parásitos en los animales vacunados, el efecto del stress sobre la vacunación y asimismo, la inmunogenicidad de la vacuna en perros de campo. Todo ello permitirá obtener información sobre la eficacia de la vacunación experimental y podría aportar una herramienta adicional contra la Enfermedad de Chagas, interfiriendo en la cadena epidemiológica en áreas endémicas.

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Magdeburg, Univ., Fak. für Verfahrens- und Systemtechnik, Diss., 2009

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Magdeburg, Univ., Fak. für Elektrotechnik und Informationstechnik, Diss., 2015

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This paper examines competition in a spatial model of two-candidate elections, where one candidate enjoys a quality advantage over the other candidate. The candidates care about winning and also have policy preferences. There is two-dimensional private information. Candidate ideal points as well as their tradeoffs between policy preferences and winning are private information. The distribution of this two-dimensional type is common knowledge. The location of the median voter's ideal point is uncertain, with a distribution that is commonly known by both candidates. Pure strategy equilibria always exist in this model. We characterize the effects of increased uncertainty about the median voter, the effect of candidate policy preferences, and the effects of changes in the distribution of private information. We prove that the distribution of candidate policies approaches the mixed equilibrium of Aragones and Palfrey (2002a), when both candidates' weights on policy preferences go to zero.

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When two candidates of different quality compete in a one dimensional policy space, the equilibrium outcomes are asymmetric and do not correspond to the median. There are three main effects. First, the better candidate adopts more centrist policies than the worse candidate. Second, the equilibrium is statistical, in the sense that it predicts a probability distribution of outcomes rather than a single degenerate outcome. Third, the equilibrium varies systematically with the level of uncertainty about the location of the median voter. We test these three predictions using laboratory experiments, and find strong support for all three. We also observe some biases and show that they canbe explained by quantal response equilibrium.

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We study the incentives of candidates to enter or to exit elections in order to strategically affect the outcome of a voting correspondence. We extend the results of Dutta, Jackson and Le Breton (2000), who only considered single-valued voting procedures by admitting that the outcomes of voting may consist of sets of candidates. We show that, if candidates form their preferences over sets according to Expected Utility Theory and Bayesian updating, every unanimous and non dictatorial voting correspondence violates candidate stability. When candidates are restricted to use even chance prior distributions, only dictatorial or bidictatorial rules are unanimous and candidate stable. We also analyze the implications of using other extension criteria to define candidate stability that open the door to positive results.

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D53 (RibomuntyR) is a composite vaccine made of immunogenic ribosomes from 4 bacterial species (Klebsiella pneumoniae, Haemophilus influenzae, Streptococcus pyogenes and Streptococcus pneumoniae) associated with a membrane proteoglycan from a non encapsulated strain of Klebsiella pneumoniae. D53 is a potent inducer of interleukin-1 production by mouse BALB/c spleen cells as shown by the C3H/HeJ thymocyte co-stimulation assay. Furthermore D53 triggers DNA synthesis by mouse spleen cells and induces the maturation of B lymphocytes into immunoglobulin secreting cells. Polyclonal B cell activation by D53 was readily achieved in the C3H/HeJ strain which is deficient in its response to E. coli lipopolysaccharide. The proliferative response to D53 was abrogated by removal of B cells from the spleen cell suspension, but it was not altered after depletion of T cells or adherent cells. D53 induced polyclonal B cell activation of spleen cells from athymic nude mice and from CBA/N mice. Each component of D53 induced polyclona B cell activation except ribosomes from Streptococcus pneumoniae. Each triggered Interleukin-1 synthesis except ribosomes from Klebsiella penumoniae. These in vitro properties may account for some of the in vivo immunostimulating properties of this composite vaccine.

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PURPOSE: The Cancer Vaccine Consortium of the Cancer Research Institute (CVC-CRI) conducted a multicenter HLA-peptide multimer proficiency panel (MPP) with a group of 27 laboratories to assess the performance of the assay. EXPERIMENTAL DESIGN: Participants used commercially available HLA-peptide multimers and a well characterized common source of peripheral blood mononuclear cells (PBMC). The frequency of CD8+ T cells specific for two HLA-A2-restricted model antigens was measured by flow cytometry. The panel design allowed for participants to use their preferred staining reagents and locally established protocols for both cell labeling, data acquisition and analysis. RESULTS: We observed significant differences in both the performance characteristics of the assay and the reported frequencies of specific T cells across laboratories. These results emphasize the need to identify the critical variables important for the observed variability to allow for harmonization of the technique across institutions. CONCLUSIONS: Three key recommendations emerged that would likely reduce assay variability and thus move toward harmonizing of this assay. (1) Use of more than two colors for the staining (2) collect at least 100,000 CD8 T cells, and (3) use of a background control sample to appropriately set the analytical gates. We also provide more insight into the limitations of the assay and identified additional protocol steps that potentially impact the quality of data generated and therefore should serve as primary targets for systematic analysis in future panels. Finally, we propose initial guidelines for harmonizing assay performance which include the introduction of standard operating protocols to allow for adequate training of technical staff and auditing of test analysis procedures.

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Treball al que se li ha concedit el premi al millor póster del congrés

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Three antigens protective against Schistosoma mansoni have been extensively characterized. The schistosomulum surface antigen GP38 possesses an immunodominant carbohydrate epitope of which the structure has been defined. Protection can be achieved via the transfer of monoclonal antibodies recognizing the epitope or by immunization with anti-idiotype monoclonal antibodies. The glycan epitope is shared with the intermediate host, Biomphalaria glabrata as well as being present on other molluscs, including the Keyhole Limpet. A group of molecules at 28 kDa were initially characterized in adult worms and shown to protect rats and mice against a challenge infection. One of these molecules, P28-I, was cloned and expressed in E. coli, yeast and vaccinia virus. The recombinant antigen significantly protected rats, hamsters and baboons against a challenge infection. P28-I is a glutathione-S-transferase and the recombinant antigen produced in yeast exhibits the enzyme activity and has been purified to homogeneity by affinity chromatography. A second P28 antigen, P28-II, has also been cloned, fully sequenced and expressed. This recombinant antigen also protects against S. mansoni infection.

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We have designed a vaccine model based on induction of cell-mediated immunity and shown that it protects mice against Schistosoma mansoni infection. Mice are immunized by intradermal injection with schistosome antigens plus BCG. Resistance is dependent on the route of antigen presentation and the adjuvant chosen. The pattern of resistance correlates with sensitization of T lymphocytes for production of gamma interferon, a macrophage activating lymphokine that stimulates the cellular effector mechanism of protection. Purified schistosome paramyosin, a muscle cell component present in soluble parasite antigenic preparations, is immunogenic for T lymphocytes and induces resistance when given intradermally with BCG. It is likely that this protein, and possibly other soluble molecules that are released by the parasites of a challenge infection, induce a cellular inflammatory response resulting in larval trapping and/or killing by activated macrophages. These results verify the feasibility of a vaccine against schistosomiasis based on induction of cell-mediated immune resistance mechanisms.

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The fire ant Solenopsis invicta and its close relatives display an important social polymorphism involving differences in colony queen number. Colonies are headed by either a single reproductive queen (monogyne form) or multiple queens (polygyne form). This variation in social organization is associated with variation at the gene Gp-9, with monogyne colonies harboring only B-like allelic variants and polygyne colonies always containing b-like variants as well. We describe naturally occurring variation at Gp-9 in fire ants based on 185 full-length sequences, 136 of which were obtained from S. invicta collected over much of its native range. While there is little overall differentiation between most of the numerous alleles observed, a surprising amount is found in the coding regions of the gene, with such substitutions usually causing amino acid replacements. This elevated coding-region variation may result from a lack of negative selection acting to constrain amino acid replacements over much of the protein, different mutation rates or biases in coding and non-coding sequences, negative selection acting with greater strength on non-coding than coding regions, and/or positive selection acting on the protein. Formal selection analyses provide evidence that the latter force played an important role in the basal b-like lineages coincident with the emergence of polygyny. While our data set reveals considerable paraphyly and polyphyly of S. invicta sequences with respect to those of other fire ant species, the b-like alleles of the socially polymorphic species are monophyletic. An expanded analysis of colonies containing alleles of this clade confirmed the invariant link between their presence and expression of polygyny. Finally, our discovery of several unique alleles bearing various combinations of b-like and B-like codons allows us to conclude that no single b-like residue is completely predictive of polygyne behavior and, thus, potentially causally involved in its expression. Rather, all three typical b-like residues appear to be necessary.